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Influence of various fluoride agents on working properties and surface characteristics of uncoated, rhodium coated and nitrified nickel-titanium orthodontic wires
- Publication Year :
- 2015
-
Abstract
- Objective was to analyze the effect of various fluoride formulations in commercially available agents on working properties of various nickel- titanium orthodontic wires. Uncoated (NiTi), rhodium coated (RhNiTi) and nitrified (NNiTi) wires were immersed to dH2O, MiPaste, Elmex and Mirafluor for 1 h. Unloading slope characteristics (average force, bending action of the force and average plateau length) and the percentage of usable constant force during unloading were observed. Surface roughness (Ra) was measured. SEM and EDS were used for observation of the surface. NiTi had decreased loading and unloading elastic modulus (E) and yield strength (YS) after immersion to MIPaste and Mirafluor. The unloading YS decreased in the RhNiTi by the MIPaste. The loading and unloading YS of the NNiTi increased in Elmex and increased average plateau force. RhNiTi showed higher average plateau length and the percentage of useful constant force during unloading in Mirafluor and the average plateau force lowered after immersion to MIPaste. The unloading slope characteristics for NiTi were affected by all three prophylactic agents, mostly by Mirafluor, and produced significantly lower forces during both loading and unloading, similarly to the NNiTi wires. The RhNiTi had the lowest forces during both loading and unloading in MIPaste. All results were at significance ; p < 0.05. Difference in Ra was observed for RhNiTi after immersion to the MI Paste (p < 0.001 ; h2 = 0.761). The NiTi and NNiTi wires lose less working force when combined with Elmex. The RhNiTi improve their working properties with Mirafluor and deteriorate when combined with MiPaste.
- Subjects :
- Materials science
Time Factors
Nitrogen
Surface Properties
chemistry.chemical_element
Surface finish
Diamines
Corrosion
Rhodium
chemistry.chemical_compound
Fluorides
Coated Materials, Biocompatible
corrosion
orthodontic appliance
roughness
chemically induced
stress
mechanical
Nickel
Elastic Modulus
Materials Testing
Surface roughness
Immersion (virtual reality)
Orthodontic Wires
Humans
Composite material
Pliability
General Dentistry
Elastic modulus
Titanium
Calorimetry, Differential Scanning
Spectrophotometry, Atomic
Temperature
Caseins
General Medicine
Cariostatic Agents
chemistry
Nickel titanium
Sodium Fluoride
Stress, Mechanical
Fluoride
Dental Alloys
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....af39dd7404a97106f3f9daf6b44d2541